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Dive into the research topics where Kenneth Higa is active.

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Featured researches published by Kenneth Higa.


Nano Letters | 2016

A Convenient and Versatile Method to Control the Electrode Microstructure Toward High-Energy Lithium-Ion Batteries

Hui Zhao; Qing Yang; Neslihan Yuca; Min Ling; Kenneth Higa; Vincent S. Battaglia; Dilworth Y. Parkinson; Venkat Srinivasan; Gao Liu

Control over porous electrode microstructure is critical for the continued improvement of electrochemical performance of lithium ion batteries. This paper describes a convenient and economical method for controlling electrode porosity, thereby enhancing material loading and stabilizing the cycling performance. Sacrificial NaCl is added to a Si-based electrode, which demonstrates an areal capacity of ∼4 mAh/cm(2) at a C/10 rate (0.51 mA/cm(2)) and an areal capacity of 3 mAh/cm(2) at a C/3 rate (1.7 mA/cm(2)), one of the highest material loadings reported for a Si-based anode at such a high cycling rate. X-ray microtomography confirmed the improved porous architecture of the SiO electrode with NaCl. The method developed here is expected to be compatible with the state-of-the-art lithium ion battery industrial fabrication processes and therefore holds great promise as a practical technique for boosting the electrochemical performance of lithium ion batteries without changing material systems.


Journal of Polymer Science Part B | 2017

Simulation of local ion transport in lamellar block copolymer electrolytes based on electron micrographs

Mahati Chintapalli; Kenneth Higa; X. Chelsea Chen; Venkat Srinivasan; Nitash P. Balsara

Author(s): Chintapalli, M; Higa, K; Chen, XC; Srinivasan, V; Balsara, NP | Abstract:


Journal of The Electrochemical Society | 2016

Mechanical Degradation of Graphite/PVDF Composite Electrodes: A Model-Experimental Study

Kenji Takahashi; Kenneth Higa; Sunil Mair; Mahati Chintapalli; Nitash P. Balsara; Venkat Srinivasan


Journal of The Electrochemical Society | 2015

Stress and Strain in Silicon Electrode Models

Kenneth Higa; Venkat Srinivasan


Journal of The Electrochemical Society | 2017

Effect of initial state of lithium on the propensity for dendrite formation: A theoretical study

Pallab Barai; Kenneth Higa; Venkat Srinivasan


Physical Chemistry Chemical Physics | 2017

Lithium dendrite growth mechanisms in polymer electrolytes and prevention strategies

Pallab Barai; Kenneth Higa; Venkat Srinivasan


Journal of The Electrochemical Society | 2016

Influence of Electrolyte Modulus on the Local Current Density at a Dendrite Tip on a Lithium Metal Electrode

Katherine J. Harry; Kenneth Higa; Venkat Srinivasan; Nitash P. Balsara


Journal of The Electrochemical Society | 2017

Comparing macroscale and microscale simulations of porous battery electrodes

Kenneth Higa; Shao-Ling Wu; Dilworth Y. Parkinson; Yanbao Fu; Steven Ferreira; Vincent S. Battaglia; Venkat Srinivasan


Journal of The Electrochemical Society | 2017

Electrode Slurry Particle Density Mapping Using X-ray Radiography

Kenneth Higa; Hui Zhao; Dilworth Y. Parkinson; Harold S. Barnard; Min Ling; Gao Liu; Venkat Srinivasan


Journal of The Electrochemical Society | 2017

Evaluating Transport Properties and Ionic Dissociation of LiPF6in Concentrated Electrolyte

Zhange Feng; Kenneth Higa; Kee Sung Han; Venkat Srinivasan

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Venkat Srinivasan

Lawrence Berkeley National Laboratory

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Gao Liu

University of California

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Hui Zhao

University of California

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Min Ling

University of California

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Shao-Ling Wu

Lawrence Berkeley National Laboratory

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